EP1119397B1 - Appui-mollet a rigidite reglable - Google Patents

Appui-mollet a rigidite reglable Download PDF

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Publication number
EP1119397B1
EP1119397B1 EP99970335A EP99970335A EP1119397B1 EP 1119397 B1 EP1119397 B1 EP 1119397B1 EP 99970335 A EP99970335 A EP 99970335A EP 99970335 A EP99970335 A EP 99970335A EP 1119397 B1 EP1119397 B1 EP 1119397B1
Authority
EP
European Patent Office
Prior art keywords
highback
stiffness
back member
snowboard
section
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP99970335A
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German (de)
English (en)
Other versions
EP1119397A1 (fr
Inventor
Stefan Reuss
Brian D. West
David J. Dodge
Ryan Coulter
Christopher M. Doyle
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Burton Corp
Original Assignee
Burton Corp
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Filing date
Publication date
Application filed by Burton Corp filed Critical Burton Corp
Publication of EP1119397A1 publication Critical patent/EP1119397A1/fr
Application granted granted Critical
Publication of EP1119397B1 publication Critical patent/EP1119397B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B5/00Footwear for sporting purposes
    • A43B5/04Ski or like boots
    • A43B5/0401Snowboard boots
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B5/00Footwear for sporting purposes
    • A43B5/04Ski or like boots
    • A43B5/0427Ski or like boots characterised by type or construction details
    • A43B5/0482Ski or like boots characterised by type or construction details made from materials with different rigidities
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C10/00Snowboard bindings
    • A63C10/24Calf or heel supports, e.g. adjustable high back or heel loops
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C10/00Snowboard bindings
    • A63C10/02Snowboard bindings characterised by details of the shoe holders
    • A63C10/04Shoe holders for passing over the shoe

Definitions

  • the present invention relates generally to a highback for gliding sports and, more particularly, to a highback with adjustable stiffness.
  • gliding board will refer generally to any of the foregoing boards as well as to other board-type devices which allow a rider to traverse a surface.
  • inventive highback to which this patent is addressed is disclosed below particularly in connection with a soft snowboard boot and binding that is used in conjunction with a snowboard. It should be appreciated, however, that the present invention described below can be used in association with other types of gliding boards, as well as other types of boots, such as hybrid boots which combine various aspects of hard and soft boots.
  • Snowboard binding systems for soft snowboard boots typically include an upright member, called a “highback” (also known as a “lowback” and a “skyback”), that supports the rear lower portion of a rider's leg.
  • the highback acts as a lever that helps transmit forces directly to and from the board, allowing the rider to efficiently control the board through leg movement. For example, flexing one's legs rearward against the highback places the board on its heel edge with a corresponding shift in weight and balance acting through the highback to complete a heelside turn.
  • Board control may be affected by the overall stiffness or flexibility of a highback. For example, as the stiffness of the highback increases, force transmission increases resulting in more responsive board control. Conversely, as the stiffness of the highback decreases, power transmission decreases resulting in less responsive board control.
  • a stiff highback tends to transmit shock from the board to the rider, while a more flexible highback tends to absorb shock and chatter for a more forgiving ride.
  • the degree of highback stiffness may also affect a rider's comfort level when riding.
  • a stiff highback may create undesirable pressure points against a rider's leg, rather than apply a uniform pressure distribution across the boot and leg.
  • the upper portion of a stiff highback may engage the rider's calf muscle, thereby concentrating much of the force between the highback and the rider's leg onto the calf muscle, a condition riders generally find uncomfortable.
  • a rider may employ a highback having some less preferable characteristics to gain other more desirable characteristics in its overall performance. For example, some riders may choose to use a responsive highback that may be less comfortable, while other riders may choose to use a less responsive highback that is more comfortable. Accordingly, riders may prefer a degree of adjustability in the highback stiffness for achieving a desirable balance between various highback characteristics, such as power transmission to the board and pressure distribution on the leg during heelside maneuvers.
  • EP-A-724 851 offers a similar solution to the problem. Fastened to the rear of the boot is a line of elements elastically linked to each other for limited resilient pivoting movement with respect to each other until they abut each other to restrain further pivoting.
  • a highback for use with a component, such as a gliding board binding, a boot or a binding interface, that interfaces with a rider's leg and is supportable by a gliding board.
  • the highback comprises a highback body that includes an upright back member to support a rear portion of a rider's leg.
  • the highback body has a controlled stiffness that is adjustable between a first fixed stiffness and a second fixed stiffness that is different from the first fixed stiffness.
  • the highback body is constructed and arranged for engagement with the component.
  • a highback for use with a snowboard component that interfaces with a rider's leg and is supportable by a snowboard.
  • the highback comprises a highback body that includes a contoured upright back member to support a rear portion of a rider's leg.
  • the back member has a controlled stiffness that is adjustable between a first fixed stiffness and a second fixed stiffness that is different from the first fixed stiffness.
  • the back member includes a lower portion with a heel cup configured to hold a heel portion of a snowboard boot and at least one section supported on the lower portion for movement relative to the lower portion. Movement of the at least one section is controllable to adjust the stiffness of the back member.
  • the at least one section is flexible relative to the lower portion along a flex zone defined in part by at least one aperture extending through the back member.
  • the highback body is constructed and arranged to be supported on the snowboard component.
  • the highback may also include a control element that is mountable to the back member to limit the relative movement between the at least one section and the lower portion to fix the stiffness of the back member in one of the first fixed stiffness and the second fixed stiffness.
  • the highback may further include a pair of lateral arms extending from opposing sides of the back member to pivotally mount the highback to the snowboard component.
  • the present invention is directed to a highback that is provided with stiffness adjustability for accommodating a rider's particular riding preferences. Adjusting the highback stiffness allows the rider to selectively increase or decrease force transmission and board response based on individual riding preferences and/or riding conditions. Adjusting highback stiffness may also allow a rider to reduce pressure points between the highback and the leg, particularly the rider's calf muscle, for increased comfort while maintaining heelside support for board control.
  • the highback may employ one or more sections that can be selectively arranged to achieve a desired highback stiffness for board response and comfort.
  • One or more control elements may also be implemented to adjust the degree of the overall highback stiffness.
  • the highback 20 includes an upright back member 22 and a pair of lateral arms 24 that extend from opposing sides of the back member.
  • the lateral arms 24 may be employed to pivotally attach the highback to a gliding board component, such as a snowboard binding, a snowboard boot or a binding interface, along a mounting axis 26 that is transverse to the length of the binding or boot.
  • the back member 22 preferably has a contoured configuration that is compatible with the shape of a boot.
  • the highback 20 includes a heel cup 28 at the lower end of the back member that is configured to grip and hold the heel portion of the boot.
  • the back member 22 transitions from the heel cup 28 to an upper portion 30 of the highback that is configured to extend along the rear portion of the rider's leg to provide heelside support for turning and controlling the board.
  • the inner surface of the highback may include resilient pads 32, 34 to increase heel hold, to absorb shock and to facilitate pressure distribution across the boot and leg.
  • the highback 20 includes one or more sections in its upper portion that may be configured to provide a desired highback stiffness.
  • the upper portion 30 of the highback may include first and second sections 36, 38 that can be flexed relative to the heel cup 28.
  • the first section 36 can be flexed relative to the second section 38 which in turn can be flexed relative to the lower portion of the back member 22 above the heel cup 28.
  • the degree and direction of flex may be defined by flex zones 40, 42 formed in the back member.
  • the flex zones 40, 42 may extend generally parallel to the mounting axis 26 of the highback to allow the sections 36, 38 to flex in a toe-to-heel direction A. It is to be appreciated, however, that the highback may be configured to allow flexibility in any direction as would be appreciated by one of skill in the art. For example, one or more flex zones may be provided transverse to or in multiple directions relative to the mounting axis.
  • the overall stiffness of the highback 20 may be established by the number and size of the sections 36, 38.
  • the overall stiffness of the highback may be decreased by decreasing the height of each section and increasing the number of sections. It is to be appreciated, therefore, that the number and size of the sections are not limited to the illustrative embodiment shown in the figures.
  • the highback 20 may be configured with a particular degree of stiffness by adjusting the flexibility of the highback at selected locations on the back member.
  • first and second apertures 46, 48 extend across the upper portion 30 of the back member 22 to form the flex zones 40, 42.
  • any suitably configured aperture may be employed to achieve the desired stiffness characteristics for the highback.
  • the degree of highback stiffness may be established in any other suitable manner apparent to one of skill in the art.
  • the stiffness of the highback 20 may be increased or decreased by varying the thickness or surface texture of the back member 22 at selected locations.
  • the stiffness may also be established using various structural members or reliefs, such as ribs or grooves.
  • the highback stiffness may also be achieved using materials of varying characteristics at selected locations.
  • highback stiffness may be adjusted using one or more control elements 50, 52 that are mountable to the highback.
  • the control elements 50, 52 may be disposed in one or more of the apertures 46, 48 to control the relative flexibility of the first and second sections 36, 38 of the highback by acting as compressible wedges between the sections when the rider exerts heelside pressure on the highback.
  • control elements 50, 52 are preferably removable so that a rider can readily adjust the overall highback stiffness by interchanging several control elements of varying stiffness.
  • the control elements 50, 52 are detachable plugs that may be locked into and removed from the apertures.
  • Each plug may include an interlock 54, such as a barb, a tooth, an undercut or the like, that engages a corresponding feature, such as the periphery of the aperture, to retain the plug on the highback during anticipated riding conditions.
  • the highback 20 may be provided with two or more plugs of different stiffness characteristics for each aperture to give a rider several options for highback stiffness.
  • a rider may adjust the highback stiffness by selectively interchanging one or more of the control elements 50, 52.
  • the highback stiffness may be minimized by removing each of the control elements 50, 52 from the highback so that the sections 36, 38 may freely flex.
  • highback stiffness may be maximized by attaching rigid control elements 50, 52 to the highback, thereby substantially eliminating highback flexibility for high power transmission and quick board response.
  • Intermediate levels of highback stiffness may be achieved by attaching one or more resilient control elements 50, 52 to the highback.
  • Various combinations of control elements 50, 52 may also be employed to further adjust the highback stiffness in accordance with the rider's riding preferences as would be apparent to one of skill in the art.
  • control elements 50, 52 may be integrally formed on the rear surface of the upper pad 32 so that they protrude through the apertures 46, 48 when the pad is attached to the inner surface of the highback.
  • the control elements 50, 52 may be formed of a material having different compressive properties than the pad.
  • pads 32 having different stiffness characteristics may be provided to give the rider the option of adjusting the highback stiffness by selectively attaching one of pads to the highback.
  • control elements may include one or springs that are interchangeably attached to the highback.
  • a spring 56 such as a leaf spring
  • the intermediate portion of the spring 56 may be secured between the first and second sections 36, 38 using any suitable fastener 58, such as a screw or the like.
  • the opposing ends of the spring 56 may be slidably secured to the highback using any suitable fastener 60, such as a screw, pin or the like, that extends through the spring 56 and corresponding slots 62 in the highback.
  • the first end 64 of the spring is slidably secured above the first aperture 46 and the second end 66 of the spring is slidably secured below the second aperture 48.
  • the intermediate portion of the spring is fixed to the highback between the first and second apertures so that flexing the first and second sections 36, 38 of the highback causes the first and second ends 64, 66 of the spring to bend about its intermediate portion.
  • the degree of highback stiffness may be controlled through the use of particular spring characteristics. For example, a spring with a high spring constant will provide greater highback stiffness than a spring with a low spring constant when subjected to the same applied force.
  • the highback 20 is preferably molded from a rigid plastic material, such as polycarbonate, polyolefin, polyurethane, polyethylene and the like, that is capable of providing efficient force transmission from the rider to the board.
  • the control elements 50, 52 are preferably molded from a resilient material, such as an elastomer. It is to be appreciated, however, that the highback and control elements may be formed from any suitable material apparent to one of skill in the art. For example, the control elements may be made from various gels, plastics, foams and the like. In another embodiment, the control elements may include interchangeable compression springs or other suitable dampening means apparent to one of skill.
  • the stiffness of the highback 20 may be adjusted using a plurality of interchangeable highback uppers, each having a stiffness that differs from the other uppers.
  • the uppers may also be provided with shapes having varying curvatures, heights and/or any other feature apparent to one of skill.
  • the back member 22 of the highback may detachably support any one of the interchangeable uppers 70 to provide a desired highback stiffness.
  • the uppers 70 may be detachably connected to the highback using any suitable fastener apparent to one of skill, such as a screw 72 and nut 74 arrangement.
  • the adjustable highback according to the present invention may be employed in any gliding board activity, such as snowboarding, that would benefit from heelside support.
  • any gliding board activity such as snowboarding
  • the inventive highback is now described below in connection with a snowboard binding.
  • the snowboard binding 80 may include a baseplate 82, which is mountable to a snowboard 84, and one or more binding straps, preferably adjustable straps, that are attached to the baseplate for securing a boot (not shown) to the snowboard.
  • the highback 20 is pivotally mounted to the sidewalls of the baseplate 82.
  • the binding 80 may include an ankle strap 86 that extends across the ankle portion of the boot to hold down the rider's heel and a toe strap 88 that extends across and holds down the front portion of the boot. It is to be understood, however, that the binding 80 may implement other strap configurations.
  • a lockdown forward lean adjuster 90 may also be provided to interact with a heel hoop 92 for setting the highback 20 at a preselected forward lean angle relative to the board and to lock down the highback for enhanced toeside response.
  • the highback 20 of the present invention is not limited to any particular type of binding.
  • the highback may also be implemented with a step-in snowboard binding that includes a locking mechanism that engages corresponding features provided, either directly or indirectly, on a snowboard boot.
  • the highback may be mounted to a binding baseplate in a manner similar to the binding described above. Examples of step-in snowboard bindings that may incorporate the flexible highback are described in U.S. patent no. 5,722,680 and U.S. patent application no. 08/780,721.
  • the highback 20 of the present invention may be either permanently attached to or removable from a snowboard boot.
  • a removable highback provides system flexibility by allowing the boot to be implemented with binding systems that already include a highback mounted to a binding baseplate.
  • the highback 20 is movably mounted to the heel region of a boot 100.
  • the lateral arms 24 are preferably attached below the ankle portion of the boot for facilitating lateral or side-to-side boot flexibility that allows desirable lateral foot roll.
  • the lateral arms 24 may be attached to the boot, preferably at reinforced attachment points, using any suitable fastener 102, such as a screw, rivet or the like, that passes through each lateral arm.
  • the flexible highback 20 may be implemented with a detachable binding interface system for interfacing a boot to a binding.
  • the interface 110 includes a body 112 and at least one adjustable strap 114 that is arranged to be disposed across the ankle portion of the boot 116, which is shown in phantom.
  • the highback 20 is movably mounted to the sidewalls of the interface body 112 using a suitable fastener 115 that passes through the lateral arms 24 of the highback.
  • the body 112 of the interface may include one or more mating features 118, as would be apparent to one of skill in the art, that are adapted to engage corresponding engagement members 120 on the binding 122.
  • binding interface 110 and binding 122 shown in FIG. 9 is described in greater detail in a U.S. application no. 09/062,131.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)
  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
  • Transition And Organic Metals Composition Catalysts For Addition Polymerization (AREA)
  • Adhesives Or Adhesive Processes (AREA)
  • Details Or Accessories Of Spraying Plant Or Apparatus (AREA)

Claims (24)

  1. Appui-mollet (20) de surf des neiges à utiliser avec un composant qui forme une interface avec la jambe d'un utilisateur de surf des neiges et peut être soutenu par un surf des neiges, l'appui-mollet comprenant :
    un corps d'appui-mollet comprenant un élément arrière vertical (22) construit et agencé pour soutenir une partie arrière de la jambe d'un utilisateur, le corps d'appui-mollet ayant une rigidité commandée qui est réglable entre une première rigidité fixe et une seconde rigidité fixe qui est différente de la première rigidité fixe, le corps d'appui-mollet étant construit et agencé pour venir en prise avec le composant ; et
    un ajusteur d'inclinaison vers l'avant (90) monté sur le corps d'appui-mollet, l'ajusteur d'inclinaison vers l'avant étant construit et agencé pour venir en prise avec une partie d'une fixation de sécurité sur le surf des neiges pour placer l'appui-mollet dans une position d'inclinaison vers l'avant présélectionnée par rapport au surf des neiges.
  2. Appui-mollet selon la revendication 1, dans lequel l'élément arrière comprend une partie inférieure (28) et au moins une section (38) supportée de manière mobile sur la partie inférieure, le déplacement de l'au moins une section par rapport à la partie inférieure pouvant être commandé (52) pour régler la rigidité du corps d'appui-mollet.
  3. Appui-mollet selon la revendication 2, dans lequel la partie inférieure comprend un emboítage de talon (28), l'au moins une section étant supportée de manière souple sur la partie inférieure de l'élément arrière au-dessus de l'emboítage de talon.
  4. Appui-mollet selon la revendication 3, dans lequel le corps d'appui-mollet comprend en outre une paire de bras latéraux (24) s'étendant à partir de côtés opposés de l'élément arrière, les bras latéraux étant construits et agencés pour monter de manière pivotante l'appui-mollet sur le composant le long d'un axe de montage, l'au moins une section étant supportée de manière souple le long d'une zone de flexion (42) qui est globalement parallèle à l'axe de montage.
  5. Appui-mollet selon la revendication 3, dans lequel l'au moins une section (38) est flexible dans une direction des orteils au talon.
  6. Appui-mollet selon la revendication 3, dans lequel l'au moins une section (38) est flexible par rapport à la partie inférieure de l'élément arrière le long d'une zone de flexion (42) formée en partie par au moins une ouverture (48) s'étendant à travers l'élément arrière.
  7. Appui-mollet selon la revendication 6, dans lequel l'au moins une ouverture (48) présente une forme globalement ovale s'étendant de part et d'autre de l'élément arrière.
  8. Appui-mollet selon la revendication 2, comprenant en outre au moins un élément de commande (52) qui peut être monté sur le corps d'appui-mollet pour limiter le déplacement relatif entre l'au moins une section (38) et la partie inférieure (28) pour fixer la rigidité du corps d'appui-mollet dans l'une quelconque des première rigidité fixe et seconde rigidité fixe.
  9. Appui-mollet selon la revendication 8, dans lequel la rigidité du corps d'appui-mollet est fixée sur la première rigidité fixe lorsque l'au moins un élément de commande (52) est monté sur l'élément arrière et sur la seconde rigidité fixe lorsque l'au moins un élément de commande (52) est détaché de l'élément arrière.
  10. Appui-mollet selon la revendication 8, dans lequel l'au moins un élément de commande (52) comprend un premier élément de commande (52) ayant une première rigidité et un second élément de commande (52) ayant une seconde rigidité qui est différente de la première rigidité, le premier élément de commande étant monté sur l'élément arrière pour fixer la rigidité de l'élément arrière sur la première rigidité fixe, le second élément de commande étant monté sur l'élément arrière pour fixer la rigidité de l'élément arrière sur la seconde rigidité fixe.
  11. Appui-mollet selon la revendication 8, dans lequel l'au moins un élément de commande comprend un bouchon (52) qui peut être inséré dans une ouverture (48) s'étendant à travers l'élément arrière.
  12. Appui-mollet selon la revendication 11, dans lequel le bouchon (52) est compressible entre l'au moins une section et la partie inférieure pour limiter le déplacement relatif entre elles pour régler la rigidité du corps d'appui-mollet.
  13. Appui-mollet selon la revendication 11, dans lequel le bouchon (52) est rigide pour éliminer sensiblement le déplacement relatif entre l'au moins une section et la partie inférieure pour accroítre la rigidité du corps d'appui-mollet.
  14. Appui-mollet selon la revendication 8, dans lequel l'au moins un élément de commande comprend au moins un ressort (56) attaché à l'élément arrière, le ressort ayant une constante de rappel prédéterminée pour régler la rigidité du corps d'appui-mollet sur l'une des première rigidité fixe et seconde rigidité fixe.
  15. Appui-mollet selon la revendication 14, dans lequel le ressort est un ressort à lame (56), au moins une extrémité du ressort étant reliée de manière coulissante à l'élément arrière.
  16. Appui-mollet selon la revendication 2, dans lequel l'au moins une section comprend une première section ayant une première rigidité et une seconde section ayant une seconde rigidité qui est différente de la première rigidité, les première et seconde sections étant supportées de manière interchangeable sur l'élément arrière pour régler la rigidité entre la première rigidité fixe et la seconde rigidité fixe.
  17. Appui-mollet selon la revendication 1, en combinaison avec le composant de surf des neiges (82), l'appui-mollet étant monté sur le composant de surf des neiges.
  18. Appui-mollet selon la revendication 17, dans lequel le composant de surf des neiges comprend la fixation de sécurité de surf des neiges (80), la fixation de sécurité ayant une embase (82), l'appui-mollet étant monté de manière pivotante sur l'embase.
  19. Appui-mollet selon la revendication 18, dans lequel la fixation de sécurité de surf des neiges comprend au moins une bride réglable (86, 88) montée sur l'embase pour fixer une chaussure de surf des neiges.
  20. Appui-mollet selon la revendication 18 ou 19, dans lequel la fixation de sécurité de surf des neiges (80) est une fixation de sécurité à chaussage automatique.
  21. Appui-mollet selon la revendication 17, dans lequel le composant de surf des neiges comprend une chaussure de surf des neiges (100), l'appui-mollet étant monté de manière pivotante sur la chaussure de surf des neiges.
  22. Appui-mollet selon la revendication 17, dans lequel le composant de surf des neiges comprend une interface de fixation de sécurité amovible (110) qui est construite et agencée pour faire l'interface entre une chaussure de surf des neiges et la fixation de sécurité de surf des neiges, l'appui-mollet étant monté de manière pivotante sur l'interface de fixation de sécurité.
  23. Appui-mollet selon l'une quelconque des revendications précédentes, dans lequel le corps d'appui-mollet comprend en outre une paire de bras latéraux (24) s'étendant à partir de côtés opposés de l'élément arrière pour monter l'appui-mollet sur le composant.
  24. Appui-mollet selon la revendication 23, dans lequel l'élément arrière (22) possède une surface intérieure s'étendant entre les côtés opposés avec une forme globalement concave.
EP99970335A 1998-10-09 1999-10-08 Appui-mollet a rigidite reglable Expired - Lifetime EP1119397B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US169074 1998-10-09
US09/169,074 US6557865B1 (en) 1998-10-09 1998-10-09 Highback with adjustable stiffness
PCT/US1999/023401 WO2000021621A1 (fr) 1998-10-09 1999-10-08 Appui-mollet a rigidite reglable

Publications (2)

Publication Number Publication Date
EP1119397A1 EP1119397A1 (fr) 2001-08-01
EP1119397B1 true EP1119397B1 (fr) 2003-05-07

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EP99970335A Expired - Lifetime EP1119397B1 (fr) 1998-10-09 1999-10-08 Appui-mollet a rigidite reglable

Country Status (7)

Country Link
US (1) US6557865B1 (fr)
EP (1) EP1119397B1 (fr)
JP (1) JP3087523U (fr)
AT (1) ATE239533T1 (fr)
AU (1) AU1201200A (fr)
DE (1) DE69907706T2 (fr)
WO (1) WO2000021621A1 (fr)

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US6554296B1 (en) 2000-04-28 2003-04-29 The Burton Corporation Highback with independent forward lean adjustment
US6969075B2 (en) * 2003-10-21 2005-11-29 The Burton Corporation Snowboard binding with reduced vertical profile
US7134928B1 (en) * 2005-08-16 2006-11-14 Connelly Skis, Inc. Binding for water sports boards
US8192244B2 (en) * 2005-08-16 2012-06-05 Connelly Skis, Inc. Water sports binding assembly
US7686321B2 (en) * 2006-12-01 2010-03-30 The Burton Corporation Highback with textile-like material for support
ITMI20120068A1 (it) * 2012-01-23 2013-07-24 Martino Fumagalli Spoiler per attacco da snowboard.
US9408435B2 (en) * 2013-03-14 2016-08-09 Bauer Hockey, Inc. Skate boot having a tendon guard with a recess
US9713758B2 (en) * 2013-10-16 2017-07-25 Kevin John LEFSRUD Ski boot frame
JP6262542B2 (ja) * 2014-01-17 2018-01-17 株式会社カーメイト スノーボード用ビンディング
US20160082343A1 (en) * 2014-09-22 2016-03-24 Timothy Hughes Universal snowboard binding
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DE69907706T2 (de) 2004-03-11
ATE239533T1 (de) 2003-05-15
JP3087523U (ja) 2002-08-09
AU1201200A (en) 2000-05-01
EP1119397A1 (fr) 2001-08-01
WO2000021621A9 (fr) 2000-09-14
WO2000021621A1 (fr) 2000-04-20
DE69907706D1 (de) 2003-06-12
US6557865B1 (en) 2003-05-06

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